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Performance of a biotrickling filter in the removal of waste gases containing low concentrations of mixed VOCs from a paint and coating plant

机译:生物滴滤过滤器在去除油漆和涂料厂中含有低浓度混合VOC的废气方面的性能

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The performance of a field-scale biotrickling filter (BTF) in the removal of waste gases containing low concentrations of mixed volatile organic compounds was evaluated. Results showed that acetone and methyl ethyl ketone (MEK) were more easily removed than toluene and styrene. The removal efficiency for acetone and MEK reached over 99% on days 28 and 25 of the operation, whereas those for toluene and styrene were 80 and 63% on day 38. The maximum individual elimination capacities for styrene, toluene, acetone, and MEK were 10.2, 2.7, 4.7, and 8.4 g/m(3) h, respectively. These values were achieved at inlet loading rates of 13.9, 3.3, 4.8, and 8.5 g/m(3) h, respectively, at an empty bed retention time of 14 s. the removal efficiency for styrene and toluene rapidly increased from 67% and 83% to 86% and over 99%, respectively, when the concentration of ammonia nitrogen (N-NH4 (+)) and phosphates (P) in the nutrients increased from 350 to 840 mg/l and 76 to 186 mg/l. When the BTF was restarted after a four-day shutdown, the removal efficiency for toluene was restored to over 99% within a week. However, that for styrene was not restored to its previous level before the shutdown. No noticeable adverse effect on acetone and MEK removal was observed. Denaturing gradient gel electrophoresis results for the bacterial community in the BTF during VOC removal showed that proteobacterial phylum was dominant, and the changes of nutrient concentration and shutdown periods may have played a role in the community structure differences.
机译:评估了现场规模的生物滴滤器(BTF)在去除含有低浓度混合挥发性有机化合物的废气中的性能。结果表明,与甲苯和苯乙烯相比,丙酮和丁酮(MEK)更容易去除。在操作的第28天和第25天,丙酮和MEK的去除效率达到99%以上,而在第38天,甲苯和苯乙烯的去除效率分别为80和63%。苯乙烯,甲苯,丙酮和MEK的最大去除能力为10.2、2.7、4.7和8.4 g / m(3)h。在空床保留时间为14 s时,分别在入口负载率为13.9、3.3、4.8和8.5 g / m(3)h时获得这些值。当营养物中的氨氮(N-NH4(+))和磷酸盐(P)的浓度从350增加时,苯乙烯和甲苯的去除效率分别从67%和83%迅速提高到86%和超过99%。至840 mg / l和76至186 mg / l。在关闭四天后重新启动BTF时,甲苯的去除效率在一周内恢复到99%以上。但是,苯乙烯的浓度在停车前未恢复到以前的水平。没有观察到对丙酮和MEK去除有明显的不利影响。挥发性有机物去除过程中BTF中细菌群落的变性梯度凝胶电泳结果表明,蛋白菌门为主导,营养物浓度的变化和停工期可能在群落结构差异中起作用。

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